Soil layer configuration requirement for large-eddy atmosphere and land surface coupled modeling

This page lists all metadata that was entered for this dataset. Only registered users of the TR32DB may download this file.

Feature
Request downloadRequest download
Full Name:
Affiliation:
eMail:
Purpose of use:
 
Bot check:
Type all characters with this
color
.
 
It is case sensitive.
 
 
 
Submit
Citation
Citation Options
Identification
Title:Main Title: Soil layer configuration requirement for large-eddy atmosphere and land surface coupled modeling
Description:Abstract: To investigate the soil-layer configuration requirement for numerical studying large-eddy scale atmosphere and land surface interactions, we conduct two experiments with an atmosphere and land surface coupled large-eddy model, one with the ‘usual’ soil-layer configuration and the other with a finer one. It is found that the former configuration prevents the soil to respond to atmospheric large eddies and the soil acts solely as a fixed external condition to the atmospheric turbulence, and is thus inadequate for large-eddy atmosphere and land surface coupled modeling. It is shown that soil-layer configuration has a profound impact on the simulated atmospheric boundary layer dynamics.
Identifier:10.1002/asl2.426 (DOI)
Responsible Party
Creators:Shaofeng Liu (Author), Yaping Shao (Author)
Publisher:Wiley Online Library
Publication Year:2013
Topic
TR32 Topic:Atmosphere
Related Subproject:D6
Subjects:Keywords: Atmosphere–Land Interaction, LES, Soil-Layer Configuration
File Details
Filename:2013_Liu_ASL.pdf
Data Type:Text - Article
Size:6 Pages
File Size:268 KB
Date:Accepted: 19.01.2013
Mime Type:application/pdf
Data Format:PDF
Language:English
Status:Completed
Constraints
Download Permission:Only Project Members
General Access and Use Conditions:For internal use only
Access Limitations:For internal use only
Licence:[TR32DB] Data policy agreement
Geographic
Specific Information - Publication
Publication Status:Published
Review Status:Peer reviewed
Publication Type:Article
Article Type:Journal
Source:Atmospheric Science Letters
Issue:2
Volume:14
Number of Pages:6 (112 - 117)
Metadata Details
Metadata Creator:Shaofeng Liu
Metadata Created:03.12.2013
Metadata Last Updated:03.12.2013
Subproject:D6
Funding Phase:2
Metadata Language:English
Metadata Version:V50
Metadata Export
Metadata Schema:
Dataset Statistics
Page Visits:665
Metadata Downloads:0
Dataset Downloads:5
Dataset Activity
Feature
A download is not possibleDownload